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具有双齿蝶形配体的双核环金属化铱(III)配合物:合成、表征及其在高效黄橙色发光电化学电池中的应用

Binuclear cyclometalated Ir(III) complexes with bis-bidentate butterfly-shaped ligands: synthesis, characterization, and application in efficient yellow-orange light-emitting electrochemical cells.

作者信息

Mazaheri Milad, Nemati Bideh Babak, Sousaraei Ahmad

机构信息

Department of Inorganic Chemistry, Faculty of Chemistry and Petroleum Sciences, Bu-Ali Sina University, Hamedan, Iran.

Departamento de Química Inorgánica, Facultad de Ciencias, Universidad Autónoma de Madrid, 28049, Madrid, Spain.

出版信息

Dalton Trans. 2024 Nov 5;53(43):17588-17594. doi: 10.1039/d4dt01958j.

Abstract

Two yellow-to-orange-emitting binuclear iridium complexes of the form Ir(ppy)(N^N) (namely IrL1 and IrL2) were designed and synthesized, using phenylpyridine (ppy) as a cyclometalating ligand (C^N) and phenanthroimidazole-based bridging compounds as ancillary ligands (N^N), to explore the effect of sterically hindered bulky bridging ligands and their substituents on the electronic and emission properties of the related ionic transition metal complexes (iTMCs) and the performance of iTMC-based light-emitting electrochemical cells (iTMC-LECs). In CHCl solution, complexes IrL1 and IrL2 afford yellow-to-orange emission centered at 570 and 582 nm with PLQYs of 27% and 36%, respectively. The reversible and quasi-reversible redox behaviors of both complexes are shown to reveal the excellent stability of the emitters in solution. The electrochemical and photophysical data indicate that the substitution at the C2 position of the imidazole moiety does not significantly affect the electronic properties of the complexes. IrL1 and IrL2-based LECs show yellow-to-orange electroluminescence centered at 586 and 598 nm, with a maximum luminance () of 430 and 570 cd m and current efficiencies of 3.45 and 4.50 cd A, respectively. However, compared with their corresponding archetypecomplex, IrL1, and IrL2-based LECs exhibit several fold higher , which highlights the role of these ligands in the design of emitters.

摘要

设计并合成了两种呈黄色至橙色发射的双核铱配合物Ir(ppy)(N^N)(即IrL1和IrL2),使用苯基吡啶(ppy)作为环金属化配体(C^N),并使用基于菲咯咪唑的桥连化合物作为辅助配体(N^N),以探究空间位阻大的桥连配体及其取代基对相关离子过渡金属配合物(iTMCs)的电子和发射性质以及基于iTMC的发光电化学电池(iTMC-LECs)性能的影响。在CHCl溶液中,配合物IrL1和IrL2分别在570和582 nm处发出以黄色至橙色为主的发射光,磷光量子产率(PLQYs)分别为27%和36%。两种配合物均表现出可逆和准可逆的氧化还原行为,表明发射体在溶液中具有出色的稳定性。电化学和光物理数据表明,咪唑部分C2位置的取代对配合物的电子性质没有显著影响。基于IrL1和IrL2的LECs分别在586和598 nm处发出以黄色至橙色为主的电致发光,最大亮度()分别为430和570 cd m,电流效率分别为3.45和4.50 cd A。然而,与它们相应的原型配合物相比,基于IrL1和IrL2的LECs表现出高出几倍的,这突出了这些配体在发射体设计中的作用。

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